• 제목/요약/키워드: Retinas

검색결과 27건 처리시간 0.019초

트레드밀 운동이 streptozotocin에 의해 유발된 당뇨 쥐의 망막 신경세포 사멸에 미치는 영향 (Effect of treadmill exercise on apoptosis in the retinas of streptozotocin-induced diabetic rats)

  • 김대영;정선영;김태운;성윤희
    • 운동과학
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    • 제21권3호
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    • pp.289-298
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    • 2012
  • 본 연구는 당뇨를 유발한 흰쥐에서 트레드밀 운동이 망막 신경세포의 사멸에 억제 효과가 있는지를 실험 하였다. 본 연구에서 Sprague-Dawley계 흰쥐 28마리를 대조군, 운동군, 당뇨군, 당뇨운동군으로 분류하여 각 군당 7마리씩 배정하였다. 당뇨는 streptozotocin을 복강에 주사하여 유발하였다. 운동군은 분당 8 m의 속도로 하루 30분씩 주 5회, 총 12주 동안 트레드밀 운동을 실시하였다. 본 연구의 결과, 당뇨 유발 흰쥐의 망막에서 세포사멸 인자인 terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling(TUNEL)-양성 세포수 그리고 caspase-3, cytochrome c, Bax의 발현이 증가되었으며, 항 세포사멸 인자인 Bcl-2의 발현은 감소되었다. 트레드밀 운동은 TUNEL-양성 세포수 그리고 caspase-3, cytochrome c, Bax의 발현을 감소시켰으며, Bcl-2의 발현은 증가시켰다. 본 실험의 결과, 당뇨에 의한 망막의 세포사멸 증가에 트레드밀 운동이 억제 작용을 나타내었으며, 따라서 트레드밀 운동은 당뇨 환자들에서 후유증을 경감시키는데 효과적인 치료법임을 알 수 있었다.

Regulatory expression and cellular localization of doublecortin in the rat retina following ischemia-reperfusion injury

  • Gwon, Jae-Sung;Chun, Myung-Hoon;Kang, Wha-Sun
    • Animal cells and systems
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    • 제15권2호
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    • pp.155-159
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    • 2011
  • Doublecortin (DCX) is microtubule-associated protein and is required for neuronal migration, differentiation and plasticity. In the retina, it is highly expressed between embryonic day 18 (E18) and E20, and is poorly expressed postnatally. In this study, we investigated the expression and cellular localization of DCX in the rat retina following ischemia induced by transiently increasing the intraocular pressure. While DCX immunoreactivity in control retinas was restricted to the outer border of the inner nuclear layer, it appeared in horizontal cell somata and processes in affected retinas. Quantitative evaluation by immunoblotting confirmed that DCX expression continuously increased after ischemia-reperfusion and showed 370% of control protein levels at 4 weeks after ischemic insult. These results suggest that the DCX in horizontal cells might play a role in neurite remodeling or modulating other neurons in ischemic rat retinas.

Morphological Analyses on Retinal Glial Responses to Glaucomatous Injury Evoked by Venous Cauterization

  • Lee, Ji-Yeon;Shin, Ji-Man;Chun, Myung-Hoon;Oh, Su-Ja
    • Applied Microscopy
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    • 제44권1호
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    • pp.21-29
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    • 2014
  • Retinal glial responses to hypertensive glaucomatous injury were spatiotemporally surveyed. Retinas as a whole or vertical sections were processed for anti-glial fibrillary acidic protein (GFAP), anti-Iba1, anti-nerve growth factor (NGF), and anti-tumor necrosis factor (TNF)-${\alpha}$ immunohistochemistry for confocal microscopic analyses. The optic nerve head of paired controls was processed for electron microscopy. GFAP positive astrocytes appeared in the nerve fiber layer in the glaucomatous and control retinas, changing from fine protoplasmic to stout fibrous parallel to glaucomatous duration. Iba1 positive microglia appeared in both retinas, and enormous reaction appeared at the latest glaucomatous. M$\ddot{u}$ller reaction detected by GFAP reactivity expanded from the end feet to whole profile following to duration in the glaucomatous. NGF reactivity expended from the end feet to the proximal radial processes of the M$\ddot{u}$ller cells in both retinas according to glaucomatous duration. TNF-${\alpha}$ immunoreactivity in the nerve fiber layer was stronger in both the glaucomatous and controls than in the normal, and exceptionally at the latest glaucomatous was even lower than the normal. The astrocytes in the optic nerve head are interconnected with each other via gap junction. These results demonstrate that astrocyte reaction propagates to the contralateral via physical links, and TNF-${\alpha}$ is correlated with NGF production for neuroprotection in response to hypertensive glaucomatous injury.

Morphology of Retinas and Lenses in the Fish of the Genus Zacco (Cypriniformes, Cyprinidae): Possible Relationship with Prey and Habitat

  • Lim, Jae-Won;Lee, Chung-Lyul;Lee, Moo-Sam
    • Animal cells and systems
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    • 제7권4호
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    • pp.331-335
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    • 2003
  • Vertebrates with different habitats have different proportions of visual cells, with the rod cells responding to scotopic vision and the cone cells responding to photopic and color vision in their retinas. The present work studied whether the kinds and arrangement patterns of the cone cells and interlocking morphology of the lens were related to the kind of preys and habitats in the genus Zacco. The retinas were observed by a light microscopy using H-E staining method and the interlocking formula of the lens fibers were investigated by a scanning electron microscopy. The interlocking formula of the lens fibers of Z. temmincki is an ' anchor and socket ' connection, and that of Z. platypus is a ' ball and socket ' connection. The cone cells of Z. platypus and Z. temmincki constituted compacted mosaic patterns of row type. Away from the center, the double and single cone cells gradually increased in diameter. Zacco temmincki had identical double cone cells and Z. platypus had non-identical double and single cone cells. The eyes of Z. temminckifeeding on a moving aquatic insects in relative limpid water and swift current of mid and upper stream have better resolution than that of Z. platypus feeding on mainly adhesive algae and some aquatic insects in slightly turbid water of mid stream.

Changes of superoxide dismutase and glutathione peroxidase in light damaged rat retina

  • Kaidzu, Sachiko;Tanito, Masaki;Takanashi, Taiji;Ohira, Akihiro
    • Journal of Photoscience
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    • 제9권2호
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    • pp.430-432
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    • 2002
  • The changes in expression of copper-zinc superoxide dismutase (CuZn-SOD), manganese superoxide dismutase (Mn-SOD) and glutathione peroxidase (GPX) in light-damaged rat retinas were examined. Sprague-Dawley rats (male, 6-weeks-old) were maintained on a cyclic photoperiod (12 hours light and 12 hours darkness) for 2 weeks. The illumination intensity during the light period was 80 lux. To induce light damage to the retina, a high-intensity illumination (3000-lux) was applied to the animals for 24 hours. After light exposure, the animals were returned to cyclic lighting. Eyes were enucleated 12 and 24 hours after light exposure started or 1,3, and 7 days after light exposure ended. Eyes were fixed and embedded in paraffin wax. Tissues were cut into 4${\mu}{\textrm}{m}$-thick sections. Sections were immunostained using antibody against CuZn-SOD, Mn-SOD, GPX and 8-hydroxy-deoxyguanocine (8-OHdG) as oxidative stress marker. 8-OHdG was observed in the outer nuclear layer (ONL) and retinal pigment epithelium (RPE) during light exposure. In light-damaged retinas CuZn-SOD labeling was up regulated in the ONL and RPE. Mn-SOD labeling was up regulated in rod inner segments (RIS) during light exposure and that in the RPE was up regulated after exposure. GPX labeling was observed in rod outer segments (ROS) during light exposure. GPX labeling was also observed in the RPE during and after light exposure. All three enzymes were observed in the outer retina, which suffered light damage, but occurred in defferent layers except within the RPE, in which case all three were expressed. These enzymes may play complementary roles as protective factors in light-damaged retinas.

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PARP1 Impedes SIRT1-Mediated Autophagy during Degeneration of the Retinal Pigment Epithelium under Oxidative Stress

  • Jang, Ki-Hong;Hwang, Yeseong;Kim, Eunhee
    • Molecules and Cells
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    • 제43권7호
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    • pp.632-644
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    • 2020
  • The molecular mechanism underlying autophagy impairment in the retinal pigment epithelium (RPE) in dry age-related macular degeneration (AMD) is not yet clear. Based on the causative role of poly(ADP-ribose) polymerase 1 (PARP1) in RPE necrosis, this study examined whether PARP1 is involved in the autophagy impairment observed during dry AMD pathogenesis. We found that autophagy was downregulated following H2O2-induced PARP1 activation in ARPE-19 cells and olaparib, PARP1 inhibitor, preserved the autophagy process upon H2O2 exposure in ARPE-19 cells. These findings imply that PARP1 participates in the autophagy impairment upon oxidative stress in ARPE-19 cells. Furthermore, PARP1 inhibited autolysosome formation but did not affect autophagosome formation in H2O2-exposed ARPE-19 cells, demonstrating that PARP1 is responsible for impairment of late-stage autophagy in particular. Because PARP1 consumes NAD+ while exerting its catalytic activity, we investigated whether PARP1 impedes autophagy mediated by sirtuin1 (SIRT1), which uses NAD+ as its cofactor. A NAD+ precursor restored autophagy and protected mitochondria in ARPE-19 cells by preserving SIRT1 activity upon H2O2. Moreover, olaparib failed to restore autophagy in SIRT1-depleted ARPE-19 cells, indicating that PARP1 inhibits autophagy through SIRT1 inhibition. Next, we further examined whether PARP1-induced autophagy impairment occurs in the retinas of dry AMD model mice. Histological analyses revealed that olaparib treatment protected mouse retinas against sodium iodate (SI) insult, but not in retinas cotreated with SI and wortmannin, an autophagy inhibitor. Collectively, our data demonstrate that PARP1-dependent inhibition of SIRT1 activity impedes autophagic survival of RPE cells, leading to retinal degeneration during dry AMD pathogenesis.

Regenerative Effect of Adipose Derived Mesenchymal Stem Cells on Ganglion Cells in the Hypoxic Organotypic Retina Culture

  • Meital Ben Dov;Bryan Krief;Moshe Benhamou;Ainat Klein;Shula Schwartz;Anat Loewenstein;Adiel Barak;Aya Barzelay
    • International Journal of Stem Cells
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    • 제16권2호
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    • pp.244-249
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    • 2023
  • Background and Objectives: To examine whether ischemic retinal ganglion cells (RGCs) will be salvaged from cell death by human adipose-derived mesenchymal stem cells (ADSCs) in an organotypic retina model. Methods and Results: Deprived of arterial oxygen supply, whole mice retinas were cultured as an ex vivo organotypic cultures on an insert membrane in a 24-well plate. The therapeutic potential of ADSCs was examined by co-culture with organotypic retinas. ADSCs were seeded on top of the RGCs allowing direct contact, or at the bottom of the well, sharing the same culture media and allowing a paracrine activity. The number of surviving RGCs was assessed using Brn3a staining and confocal microscopy. Cytokine secretion of ADSCs to medium was analyzed by cytokine array. When co-cultured with ADSCs, the number of surviving RGCs was similarly significantly higher in both treatment groups compared to controls. Analysis of ADSCs cytokines secretion profile, showed secretion of anti-apoptotic and pro-proliferative cytokines (threshold>1.4). Transplantation of ADSCs in a co-culture system with organotypic ischemic retinas resulted in RGCs recovery. Since there was no advantage to direct contact of ADSCs with RGCs, the beneficial effect seen may be related to paracrine activity of ADSCs. Conclusions: These data correlated with secretion profile of ADSCs' anti-apoptotic and pro-proliferative cytokines.

정상망막과 변성망막에서 전압자극 파라미터 변화에 따른 망막신경절세포의 반응 비교 (Comparison of Retinal Ganglion Cell Responses to Different Voltage Stimulation Parameters in Normal and rd1 Mouse Retina)

  • 예장희;류상백;김경환;구용숙
    • 한국의학물리학회지:의학물리
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    • 제21권2호
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    • pp.209-217
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    • 2010
  • 색소성망막염(retinitis pigmentosa: RP)이나 연령관련 황반변성(age-related macular degeneration: AMD)과 같은 망막질환으로 인해 실명한 환자를 위해 인공시각장치가 개발되고 있다. 인공시각장치의 동작원리는 전기자극을 주어 신경세포의 활동도를 조절하는 것이므로 시각정보를 제대로 인코딩하기 위해 최적의 전기자극을 인가하는 것은 인공시각장치의 실용화를 위해 매우 중요한 요소이다. 그러므로 본 연구에서는 전압자극의 크기와 자극시간을 변화시켜 가면서 정상망막과 변성망막에 인가한 후 자극에 의해 유발된 망막신경절세포 반응을 분석하고 역치전하밀도를 비교함으로써 최적의 전기자극 조건을 찾아보고자 하였다. 이를 위하여 정상마우스와 rd1 마우스의 망막을 in vitro 상태로 분리한 후 망막의 신경절세포층이 전극을 향하여 부착되도록 한 후 망막신호를 기록하였다. rd1 마우스에서 얻은 변성망막의 망막신경절세포에서도 전압펄스를 인가시 정상망막의 망막신경절세포처럼 전압자극의 크기와 자극시간 변조에 대하여 반응하였다. 그러나 정상망막과 변성망막에서 망막신경절세포 반응의 시간적 패턴은 매우 달랐다: 정상망막의 망막신경절세포 반응은 전기자극 후 약 100 ms 내에서 1개의 피크만 나타나는 반면, 변성망막에서는 이보다 긴 400 ms 구간에서 약 10 Hz의 진동리듬을 가진 다수의 피크(~4개)들이 나타나는 것을 확인하였다. 또한 변성망막에서 망막신경절세포의 반응을 유발하기 위한 역치 전하밀도가 정상망막에서 보다 크게 상승하였다: 자극세기를 변화시켰을 때 정상망막의 역치 전하밀도는 $37.23{\sim}61.65\;{\mu}C/cm^2$, rd1 마우스에서는 $70.50{\sim}99.87\;{\mu}C/cm^2$로 2배가량 높은 것을 확인하였다. 자극시간을 변화시켰을 때 정상망막의 역치 전하밀도는 $22.69{\sim}37.57\;{\mu}C/cm^2$, rd1 마우스에서는 $120.5{\sim}170.6\;{\mu}C/cm^2$로 5배가량 높은 것을 확인하였다.

한국관박쥐 망막의 신경전달물질 및 수용체, 뮬러세포 동정 (Localization of the Major Retinal Neurotransmitters and Receptors and Müller Glia in the Retina of the Greater Horseshoe Bat (Rhinolophus ferrumequinum))

  • 이준석;권오주;전태헌;전창진
    • 한국안광학회지
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    • 제20권3호
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    • pp.391-396
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    • 2015
  • 목적: 본 연구에서는 한국관박쥐 망막에서의 시각계를 이해하기 위하여 한국관박쥐의 망막 내 글루타메이트 및 ${\gamma}$-aminobutyric acid (GABA), 아세틸콜린과 같은 중추신경계의 주요 신경전달물질과 수용체, 신경교세포인 뮬러세포의 분포를 분석하였다. 방법: 성체 한국관박쥐의 망막을 대상으로 하였다. 망막을 수직 절편한 다음, 표준면역세포화학법을 적용하였다. 공초점 현미경을 사용하여 면역형광이미지 내 면역반응성을 확인하였다. 결과: 한국관박쥐의 망막에서 글루타메이트에 대한 면역반응성을 나타내는 신경세포들은 주로 신경절세포층에 존재하였다. GABA에 대한 면역반응성을 가지는 신경세포들은 내핵층에 주요하게 분포했으며, GABA의 수용체들은 내망상층에 존재하였다. 아세틸콜린의 면역반응성 신경세포들은 주로 내핵층에 위치하고 있었으며, 니코틴성 아세틸콜린 수용체 각각의 면역반응성들은 대부분 내망상층에 밀집해 있었다. 한국관박쥐의 망막에서 신경교세포 중 하나인 뮬러세포는 신경절 세포층에서 외핵층까지 길게 뻗어 있었다. 결론: 본 연구를 통하여 한국관박쥐의 망막에도 다른 포유동물의 망막에 있는 주요 신경전달물질 및 수용체, 뮬러세포가 존재한다는 것이 밝혀졌다. 이와 같은 연구결과는 한국관박쥐는 조직화된 망막 신경회로를 가지는 기능적 망막을 가지고 있음을 의미한다.